The report describes the digital architecture developed for the West Cambridge Digital Twin, particularly focussed on real-time sensor data collection and analysis with a privacy framework allowing occupants of the buildings to be first-class participants in the system. The implementation has some notable characteristics. In particular 'push' technology is used throughout such that information streams from the incoming asynchronous individual sensor events through to the end-user web pages with the absolute minimum latency, including real-time generated simple and complex events derived from the the underlying sensor data and the updating of visualisations such as an in-building heatmap. We believe the ability of the entire system to respond in the timescale of individual sensor messages to be unique. JSON structures are used to represent all data types including sensor readings, sensor types, building objects, organisations and people, with the idea that JSON-LD may represent a more suitable way than XML/RDF for managing relations between those objects (such as the 'occupies' relationship of people to offices, or the 'type' relationship of sensors to sensor types).
翻译:报告介绍了为西剑桥数字双星开发的数字结构,特别侧重于实时传感器数据收集和分析,并有一个隐私框架,使建筑物的占用者能够成为该系统的第一流参与者。实施过程有一些显著的特点。特别是,在整个过程中使用了“推进”技术,从即将到来的非同步单个传感器事件到绝对最小潜伏的最终用户网页的信息流,包括由基本传感器数据以及诸如建筑中热映等视觉化更新产生的实时生成的简单和复杂事件。我们认为,整个系统在单个传感器信息的时间尺度上作出反应的能力是独特的。JSON结构用来代表所有数据类型,包括传感器读数、传感器类型、建筑物体、组织和人,认为JSON-LD可能代表比XML/RDF更合适的方法来管理这些物体之间的关系(例如人们与办公室之间的“职业”关系,或传感器与传感器类型的“类型”关系)。